The invention relates to an apparatus for injecting grouting resin into a drilled hole in order to reinforce rock. More specifically the solution relates to feeding of bulk-like fluid resin material.
The invention further relates to a mining machine provided with an apparatus for injecting grouting material and to a method of reinforcing rock surfaces by injecting grouting material into several drilled holes.
The field of the invention is defined more specifically in the preambles of the independent claims.
In mines, construction sites and at other work areas exists a need to reinforce rock surfaces and to thereby ensure their safety and suitability for the intended purposes. A common method for rock reinforcement is to inject resin material into drilled holes. There are several different systems for inserting the resin material. However, the present injecting means have shown to contain some disadvantages.
An object of the invention is to provide a novel and improved apparatus for feeding resin material into drilled holes. The invention further relates to a novel and improved mining machine and to a method of feeding resin material when reinforcing rock surfaces.
The apparatus according to the invention is characterized by the characterizing features of a first independent apparatus claim.
The mining machine according to the invention is characterized by the characterizing features of a second independent apparatus claim.
The method according to the invention is characterized by the charactering features and steps of an independent method claim.
An idea of the disclosed solution is that bulk-like resin in fluid form is injected into drilled holes before inserting rock bolts into the drilled holes. The grouting resin is injected by means of an apparatus comprising an injector head insertable inside the drilled hole and comprising a mixing device. The apparatus further comprises a fluid inlet arrangement connected to the injector head for feeding resin base component A and a resin catalyst B to the injector head. The mixing device is configured to mix the fed resin base component A and the catalyst B together. The injector head and the mixing device are fed together inside the drilled hole for the duration of the injection process. The feeding is executed by means of a flexible feed hose which is also configured to provide coverage for feed lines of the fluid inlet system. The injector head comprises a valve assembly for controlling feeding of the grouting material. The valve assembly is located inside the feed hose whereby the feed hose is serving as a tubular cover element also for the valve assembly. In other words, the distal end of the feed hose is provided with the internal valve assembly or unit.
Further, in the disclosed solution the feed hose is fed inside the drill hole for the duration of the resin feed measures and removed from the drill hole when the resin feed is completed. Thus, the feed hose is only temporarily inside the drill hole and is not left therein. The feed hose and the injector head are to be used for several times for several drilled holes. In other words, the injector head provided with the valve module and the mixer device, and the feed hose are not single used devices. Further, they are all separate physical elements in relation to a rock bolt.
An advantage of the disclosed solution is that the internal valve assembly does not increase diameter of the feed system fed inside the drill hole. A further advantage is that the valve assembly is surrounded by the covering feed hose, which facilitates axial movements of the feed system inside the drill hole. The disclosed solution is especially advantageous for conditions where the drill holes tends to collapse and retracting the feed system is difficult.
A further advantage of the disclosed solution is that the structure may be simple, durable and inexpensive too when compared to the known solutions. The disclosed solution may be implemented in different rock drilling rigs and reinforcing machines. The system may also be easily retrofitted to the existing mining devices.
According to an embodiment, the feed hose is flexible so that it bends, and its cross profile deforms temporarily during the axial movement if needed. However, the feed hose is relatively rigid in axial direction so that it can be pushed and pulled axially inside the drilled hole. An outer surface of the feed hose has a low friction coefficient. Also, this feature facilitates feeding of the feed system and allows the feed system to be retracted also from damaged drilled holes.
According to an embodiment, the flexible feed hose is made of low friction polymeric material. Then the feed hose adapts to possible variations in form and dimensions of the drilled hole. The feed hose may be made of polyethylene (PE) or polyethylene medium density (PEM), for example.
According to an embodiment, greatest cross sectional dimension of the apparatus corresponds to outer diameter of the feed hose. In other words, all the other components of the apparatus have minor or equal diameter compared to the feed hose.
According to an embodiment, an inner diameter of the feed hose is 30-50 mm. An outer diameter of the valve assembly or module is dimensioned in accordance with inner diameter of the feed hose.
According to an embodiment, the disclosed valve assembly comprises a body an outer surface of which comprises at least one expandable fastening element configured to be pressed against an inner surface of the feed hose. The mounting is easy and quick to execute. There is no need to make any preparation or handling to the feed hose.
According to an embodiment, the above mentioned expandable fastening element comprises at least one resilient ring-shaped element which is compressed axially so that the element is expanded radially. The mounting is simple and reliable.
According to an embodiment, the expandable fastening element comprises several successive O-rings. Number of the O-rings may be 2-5, for example. The O-rings are inexpensive and durable components.
According to an embodiment, the expandable fastening element comprises at least one locking ring comprising tapering surfaces and configured to move and expand radially when being pushed axially by means of another tapering surface. Alternatively, there may be radially protruding locking toes for clamping to the inner surface of the feed hose.
According to an embodiment, the disclosed valve assembly and the mixing device are separate elements connected axially successively by means of an adapter element mounted between them. In other words, the injector head comprises two functional modules and the connecting adapter element between them facilitating easy removal and change of different types of mixing devices. This way it is possible to change the mixing device easily in response to the used resin material and changes in temperatures and circumstances.
According to an embodiment, the mixing device protrudes axially from the distal end of the feed hose. Then the mixing device is easy to connect and remove, which facilitates replacement of the mixing device or module.
According to an embodiment, the adapter element is located inside the feed hose. Then a joint between the adapter and the mixing device is surrounded and covered by the feed hose.
According to an embodiment, the adapter element is protruding axially from a distal end of the feed hose. In other words, at least part of the adapter is outside the end of the feed hose, whereby connecting surfaces of the adapter are well visible and connectable.
According to an embodiment, the adapter element is a separate component mounted to the valve assembly. There may be screw joint or quick coupling means between the adapter element and the valve module.
According to an embodiment, the adapter element is an integrated non-separable part of the valve module. In other words, the adapter is formed directly to a front end part of the valve module.
According to an embodiment, the adapter element comprises a central axially protruding portion a distal end of which is provided with tapering sealing surfaces and is followed by a connecting thread.
According to an embodiment, an outer surface of the body of the adapter element is sealed against the inner surface of the feed hose. There may be one or more sealing elements arranged on a body of the adapter element. The sealing element may be an O-ring or a lip seal, for example.
According to an embodiment, the mixing device may be provided with an outer sleeve an outer diameter of which corresponds to the outer diameter of the feed hose. The mentioned outer sleeve or sheath may be made of same material as the feed hose. The outer sleeve may be made of polymeric material. Further, the outer sleeve may be a separate tubular component pushed on the mixing device, or alternatively, the outer sleeve or covering may be made on the mixing unit by means of covering and casting methods.
According to an embodiment, the disclosed valve assembly comprises several control valves for selectively closing and opening at least a resin base component feed line, a resin catalyst feed line and at least one solvent medium feed line for flushing the for flushing the injector head.
According to an embodiment, the mentioned control valves are spring loaded non-return valves. These valves are small in size, simple, reliable and inexpensive.
According to an embodiment, the mentioned control valves are hydraulically controlled valves, for example pilot valves. These valves make a more versatile fluid feed control possible.
According to an embodiment, the injector head is a grouting resin feeding tool, whereby the tool is removed from the drilled hole when the resin feeding is completed and before a separate rock bolt is fed into the drilled hole filled with the grouting resin.
According to an embodiment, the mixing device comprises screw surfaces, spirals, amaze or corresponding form surfaces for causing the fed two separate resin component fluid flows to be mixed and to form one homogenous resin mass. The mixing device or element in connection with the injector head is a static mixer with several non-movable mixing elements or surfaces for mixing the fed components together prior being ejected from the injector head. Mounting of the mixing device is designed so that is easy and quick to substitute and clean when needed.
According to an embodiment, the injector head is connected to three feed lines.
According to an embodiment, the injector head is connected to more than three feed lines. There may be two different feed lines for different resin base components A1 and A2, one feed line for the resin catalyst B and one feed line for the solvent or flushing agent. In case the valve module is provided with pressure controlled pilot valves, an additional control line is needed for providing the valve module with control pressure. The mentioned basic resin components A1 and A2 may have different setting times when they are mixed with the catalyst B. The catalyst B is a hardener for a chemical reaction to start turning the resin from a liquid to a solid.
According to an embodiment, the apparatus comprises a solvent feeding system configured to feed solvent medium for flushing the injector head and the mixing device. The aim of the system is to prevent clogging in situations when there are breaks between the injections of the drilled holes.
According to an embodiment, the resin material mixed in the mixing device is flushed by means of the solvent medium out of the injector head. The system may be cleaned by pushing the mixed material outside of the mixing head, outside the drilled hole or to a top of the drilled hole just after the actual grouting resin material is being fed. This way the system is cleaned and can wait between treating several holes.
According to an embodiment, the solution relates to a mobile mining machine comprising a movable carrier, at least one boom connected movably on the carrier and an apparatus for injecting grouting resin into drilled holes. Further, there is at least one bolting unit at a distal end of the boom for feeding rock bolts into the drilled holes after being injected with the grouting resin. The boom is provided with a feed device for moving an injection head of the injecting apparatus inside the drilled hole. The apparatus for injecting the grouting resin is in accordance with the features and embodiments disclosed in this document.
According to an embodiment, the drilled holes may be equipped with rock bolts, rock anchors, cables or corresponding elongated metallic reinforcing elements after the grouting material has been injected. Thus, there are several alternative rock reinforcements that can be mounted inside the drill holes.
According to an embodiment, the solution relates to a method of injecting grouting resin into several drilled holes. The method comprises inserting an injector head inside the drilled hole. The grouting resin is mixed by means of a mixing device of the injector head. A resin base component A and a resin catalyst B are fed to the injector head by means of a fluid inlet arrangement comprising several feed lines. The fed resin base component and the resin catalyst are mixed inside the drilled hole to a resin mixture by means of the mixing device. After the injection is completed the injection head is removed from the drilled hole. Only thereafter a metallic rock reinforcement is mounted inside the drilled hole. The method further comprises feeding the injector head into the drilled hole by means of a flexible feed hose which surrounds the feed lines of the fluid inlet arrangement. The feeding of the resin material to the mixing device is controlled by means of a valve assembly mounted inside a distal end part of the feed hose. Thus, the feed hose provides coverage at least for the feed lines and the valve assembly and thereby facilitates their axial movements inside the drill hole.
The above disclosed embodiments and features may be combined in order to form suitable solutions having those of the above features that are needed.
Some embodiments are described in more detail in the accompanying drawings, in which
For the sake of clarity, the figures show some embodiments of the disclosed solution in a simplified manner. In the figures, like reference numerals identify like elements.
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The drawings and the related description are only intended to illustrate the idea of the invention. In its details, the invention may vary within the scope of the claims.
Number | Date | Country | Kind |
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20204134.9 | Oct 2020 | EP | regional |
Filing Document | Filing Date | Country | Kind |
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PCT/EP2021/087691 | 12/27/2021 | WO |